a Division of Applied Bioscience, Graduate School of Agriculture , Hokkaido University , Sapporo , Japan.
b Department of Cellular and Molecular Biology , The University of Texas Health Science Center at Tyler , Tyler , TX , USA.
J Enzyme Inhib Med Chem. 2019 Dec;34(1):171-178. doi: 10.1080/14756366.2018.1540474.
Inosine 5'-monophosphate dehydrogenase (IMPDH) is an essential enzyme for the production of guanine nucleotides. Disruption of IMPDH activity has been explored as a therapeutic strategy for numerous purposes, such as for anticancer, immunosuppression, antiviral, and antimicrobial therapy. In the present study, we established a luciferase-based high-throughput screening system to identify IMPDH inhibitors from our chemical library of known bioactive small molecules. The screening of 1400 compounds resulted in the discovery of three irreversible inhibitors: disulfiram, bronopol, and ebselen. Each compound has a distinct chemical moiety that differs from other reported IMPDH inhibitors. Further evaluation revealed that these compounds are potent inhibitors of IMPDHs with k values of 0.7 × 10 to 9.3 × 10 M·s. Both disulfiram and bronopol exerted similar degree of inhibition to protozoan and mammalian IMPDHs. Ebselen showed an intriguing difference in mode of inhibition for different IMPDHs, with reversible and irreversible inhibition to each Cryptosporidium parvum IMPDH and human IMPDH type II, respectively. In the preliminary efficacy experiment against cryptosporidiosis in severe combined immunodeficiency (SCID) mouse, a decrease in the number of oocyst shed was observed upon the oral administration of disulfiram and bronopol, providing an early clinical proof-of-concept for further utilization of these compounds as IMPDH inhibitors.
肌苷 5'-单磷酸脱氢酶(IMPDH)是产生鸟嘌呤核苷酸所必需的酶。破坏 IMPDH 活性已被探索作为多种治疗策略的基础,如抗癌、免疫抑制、抗病毒和抗菌治疗。在本研究中,我们建立了一种基于荧光素酶的高通量筛选系统,以从我们已知生物活性小分子的化学文库中鉴定 IMPDH 抑制剂。对 1400 种化合物进行筛选,发现了三种不可逆抑制剂:双硫仑、溴硝醇和依布硒啉。每种化合物都有一个独特的化学部分,与其他报道的 IMPDH 抑制剂不同。进一步评估表明,这些化合物是 IMPDHs 的有效抑制剂,k 值为 0.7×10 至 9.3×10 M·s。双硫仑和溴硝醇对原生动物和哺乳动物 IMPDHs 的抑制程度相似。依布硒啉对不同的 IMPDHs 表现出不同的抑制模式,对每个微小隐孢子虫 IMPDH 和人 IMPDH Ⅱ型分别为可逆和不可逆抑制。在严重联合免疫缺陷(SCID)小鼠的隐孢子虫病初步疗效实验中,口服双硫仑和溴硝醇后观察到卵囊排出量减少,为进一步利用这些化合物作为 IMPDH 抑制剂提供了早期临床概念验证。